NextSilicon is reimagining high-performance computing. Our accelerated compute solutions leverage intelligent adaptive algorithms to vastly accelerate supercomputers, driving them forward into a new generation. Our new software-defined hardware architecture enables HPC to fulfill its promise of breakthroughs in all fields of advanced research.
At NextSilicon, everything we do is guided by three core values:
Professionalism: We strive for exceptional results through professionalism and unwavering dedication to quality and performance.
Unity: Collaboration is key to success. Thats why we foster a work environment where every employee can feel valued and heard.
Impact: Were passionate about developing technologies that make a meaningful impact on industries, communities, and individuals worldwide.
At NextSilicon, we are reimagining high-performance computing. Our pioneering coprocessor vastly accelerates supercomputers, driving them forward into a new generation. Our new software-defined hardware architecture enables HPC to fulfill its promise of breakthroughs in all fields of advanced research.
NextSilicon is looking for a talented and experienced engineer to play a crucial role in the physical design implementation of the company’s next SOC. As a Senior Physical Design Engineer you will be responsible for the physical implementation of digital designs in semiconductor technologies, from RTL to GDSII. This position involves optimizing the layout, power, and performance of ICs, ensuring they are ready for manufacturing and meet stringent design requirements. The role requires close collaboration with cross-functional teams, including front-end designers, verification engineers, and product teams, to create high-quality, manufacturable designs.
Requirements:
8 to 10 years of experience in physical design for semiconductor devices, with proven expertise in IC PD/PV flow
Hands-on experience with EDA tools like Synopsys Fusion Compiler , ICV , and Mentor Calibre.
Strong knowledge of floorplanning, placement, routing, and Physical Verification methodologies.
Proficient in power analysis and power management techniques.
Familiar with scripting languages such as Python, Perl, or Tcl for automation.
Good understanding of process technologies and design rules.
Excellent problem-solving skills and attention to detail.
Ability to work in a fast-paced environment and meet deadlines.
Strong communication skills for effective collaboration with cross-functional teams.
Responsibilities:
Perform synthesis, floorplanning, placement, clock tree synthesis (CTS), and routing of IC designs at block and Sub-system level
Convert high-level RTL (Register Transfer Level) code into a manufacturable silicon layout while meeting PPA goals, both at Block and Sub-system level
Analyze and resolve issues related to power distribution, signal integrity, and noise
Ensure designs meet all design rules and verify the physical layout against the logical schematic. Be able to resolve all DRC and LVS issue in their designs
Work with subsystems and full chip teams to drive physical verification.
Provide Automation solution for faster convergence
Utilize EDA (Electronic Design Automation) tools such as Synopsys, and Mentor Graphics for design implementation.
Work closely with RTL design, verification, and DFT (Design for Test) teams to address design challenges and ensure integration of all design components.
Ability to implement solutions and troubleshoot complex problems with limited or no supervision
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